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Showing 1-9 of 9 results
  1. Elucidating the role of circNFIB in myocardial fibrosis alleviation by endogenous sulfur dioxide

    Background

    To investigate the role of circNFIB in the alleviation of myocardial fibrosis by endogenous sulfur dioxide (SO 2 ).

    Methods

    We stimulated...

    Jia Liu, Ranran Zhang, ... Chongmin Ren in BMC Cardiovascular Disorders
    Article Open access 20 November 2022
  2. Non-Coding RNA-Mediated Gene Regulation in Cardiovascular Disorders: Current Insights and Future Directions

    Cardiovascular diseases (CVDs) pose a significant burden on global health. Develo** effective diagnostic, therapeutic, and prognostic indicators...

    Muhammad Abubakar, Mohsin Hajjaj, ... Muhammad Ahmad Faraz in Journal of Cardiovascular Translational Research
    Article 13 December 2023
  3. Targeting circular RNAs as a therapeutic approach: current strategies and challenges

    Significant progress has been made in circular RNA (circRNA) research in recent years. Increasing evidence suggests that circRNAs play important...

    Alina T. He, **glei Liu, ... Burton B. Yang in Signal Transduction and Targeted Therapy
    Article Open access 21 May 2021
  4. The Function and Therapeutic Potential of Circular RNA in Cardiovascular Diseases

    Circular RNA (circRNA) has a closed-loop structure, and its 3’ and 5’ ends are directly covalently connected by reverse splicing, which is more...

    Kai Wang, **ang-Qian Gao, ... Lu-Yu Zhou in Cardiovascular Drugs and Therapy
    Article 16 July 2021
  5. Circular RNAs as potential theranostics in the cardiac fibrosis

    Circular RNAs (circRNAs) are a type of single-stranded RNA molecules that normally do not encode proteins. circRNAs are involved in many...

    Fatemeh Yousefi, Bahram M. Soltani in Heart Failure Reviews
    Article 02 January 2020
  6. Role of Circular RNAs in the Pathogenesis of Cardiovascular Disease

    Circular RNAs (circRNAs) are single-strand covalently closed circular noncoding RNAs that are endogenous transcripts generated from linear precursor...

    Baowei Li, Yuzhen Li, ... Peifeng Li in Journal of Cardiovascular Translational Research
    Article 12 May 2020
  7. circCELF1 Inhibits Myocardial Fibrosis by Regulating the Expression of DKK2 Through FTO/m6A and miR-636

    The aim of this study is to explore the role of circCELF1/miR-636/DKK2 pathway in myocardial fibrosis (MF). RT-qPCR and western blot were used to...

    Xue-xun Li, Bin Mu, ... Zi-dong Bie in Journal of Cardiovascular Translational Research
    Article 07 February 2022
  8. Circular RNA mmu_circ_0005019 inhibits fibrosis of cardiac fibroblasts and reverses electrical remodeling of cardiomyocytes

    Background

    Circular RNA (circRNA) have been reported to play important roles in cardiovascular diseases including myocardial infarction and heart...

    Na Wu, Chengying Li, ... Yafei Li in BMC Cardiovascular Disorders
    Article Open access 21 June 2021
  9. Epigenetic regulation in cardiovascular disease: mechanisms and advances in clinical trials

    Epigenetics is closely related to cardiovascular diseases. Genome-wide linkage and association analyses and candidate gene approaches illustrate the...

    Yuncong Shi, Huanji Zhang, ... Hui Huang in Signal Transduction and Targeted Therapy
    Article Open access 25 June 2022
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